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Engineering blood outgrowth endothelial cells to optimize endothelial nitric oxide synthase and extracellular matrix production for coating of blood contacting surfaces

机译:工程血液过度内皮细胞优化内皮一氧化氮合酶和细胞外基质生产,用于涂覆血液接触表面

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Coverage of blood contacting surfaces by a functional endothelial layer is likely required to induce and maintain homeostasis. Blood outgrowth endothelial cells (BOECs), cultured from human peripheral blood monocytes, are readily available and functional autologous endothelial source that may represent a reasonable alternative to vascular derived cells. Endothelial nitric oxide synthase (eNOS) produces NO, an important factor that regulates homeostasis at the blood-contacting surface. We found that BOECs express markedly lower levels of eNOS protein (34% +/- 13%, Western blot) and mRNA (29% +/- 17%, qRT-PCR), as well as exhibiting reduced activity (49% +/- 18%, Nitrite analysis) when compared to human umbilical vein endothelial cells (HUVECs) and human aortic endothelial cells. HUVECs grown on fibronectin, type I collagen, or laminin -coated surfaces exhibited significant reduction of eNOS mRNA and protein expression. However, no decrease in eNOS levels was observed in BOECs. Interestingly BOECs expressed significantly higher Collagen (Col) I compared to HUVECs, and blocking Col I synthesis significantly enhanced eNOS expression in BOECs. Inhibition of beta 1 integrin, focal adhesion kinase (FAK), or actin polymerization increased eNOS in both BOECs and HUVECs suggesting involvement of a signaling pathway culminating in stabilization of the cytoskeleton. Finally, we demonstrated that a Rho-associated protein kinases (ROCK) inhibitor, as a disruptor of actin stabilization, enhanced both eNOS expression and bioactivity. Taken together, our findings demonstrate that cell-ECM interactions are fundamental to the regulation of eNOS in BOECs and suggest that disruption of key intracellular pathways (such as ROCK) may be necessary to enhance functional activity of an endothelialized surface.
机译:通过功能内皮层覆盖血液接触表面的覆盖可能需要诱导和维持稳态。从人外周血单核细胞中培养的血液出现内皮细胞(BoECs)是易于获得的和功能性的自体内皮源,其可以代表血管衍生细胞的合理替代品。内皮一氧化氮合酶(ENOS)产生NO,调节血液接触表面上稳态的重要因素。我们发现Boecs明显较低水平的烯份蛋白水平(34%+/- 13%,蛋白质印迹)和mRNA(29%+/- 17%,QRT-PCR),以及表现出降低的活性(49%+ /与人脐静脉内皮细胞(HUVECS)和人主动脉内皮细胞相比,18%,亚硝酸盐分析。 Huvecs在纤连蛋白中生长,I型胶原蛋白或层粘连蛋白涂覆的表面表现出eNOS mRNA和蛋白质表达的显着降低。但是,在Boecs中没有观察到eNOS水平的降低。有趣的是,与Huvecs相比,胶原蛋白(COL)表达了显着高的胶原蛋白(COL),并阻断COL I合成显着增强了Boecs中的enos表达。 β1整联蛋白的抑制,局灶性粘附激酶(FAK)或肌动蛋白聚合在BoECS和Huvecs中增加enos,表明信号传导途径促使稳定在细胞骨架中的稳定化。最后,我们证明了一种RHO相关的蛋白激酶(岩)抑制剂,作为肌动蛋白稳定化的破坏,增强了eNOS表达和生物活性。我们的研究结果表明,细胞-ECM相互作用是对Boecs中eNOS调节的基础,并表明可以使关键细胞内途径(例如岩石)的破坏来增强内皮表面的功能活性。

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